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Biomedical subjects

J Rivera

Publications and source records attributed to J Rivera.

At least 73 records · Page 4Linked to original sources

Atmospheric deposition of PCDD/Fs near an old municipal solid waste incinerator: levels in soil and vegetation.

The levels of polychlorinated dibenzo-p-dioxins (PCDD) and polychlorinated dibenzofurans (PCDF) were determined in soil and vegetation samples taken from 24 sites in the vicinity of an old municipal solid waste incinerator (San Adrià del Besòs, Barcelona, Spain). Duplicate samples were collected within a radius of 3 km from the stack. PCDD/F concentrations in soils ranged from 1.22 to 34.28 ng I-TEQ/kg (d.m.) with median and mean values of 9.06 and 12.24 ng I-TEQ/kg, respectively. In turn, the levels of PCDD/Fs in vegetation samples ranged from 0.33 to 1.98 ng I-TEQ/kg (d.m.), with median and mean values of 0.58 and 0.70 ng I-TEQ/kg, respectively. Although the present PCDD/F concentrations in soil samples were higher than those recently found in soils taken near other incinerators from Catalonia, they are of the same order of magnitude than the levels of these pollutants found in incinerators from other countries. By contrast, the concentrations of PCDD/Fs in herbage samples were comparable to those found in recent surveys carried out in Catalonia.

Air Pollutants↗

LAT is essential for Fc(epsilon)RI-mediated mast cell activation.

The linker molecule LAT is a substrate of the tyrosine kinases activated following TCR engagement of T cells. LAT is also expressed in platelets, NK, and mast cells. Although LAT-deficient mice contain normal numbers of mast cells, we found that LAT-deficient mice were resistant to IgE-mediated passive systemic anaphylaxis. LAT-deficient bone marrow-derived mast cells (BMMC) showed normal growth and development. Whereas tyrosine phosphorylation of Fc(epsilon)RI, Syk, and Vav was intact in LAT-deficient BMMCs following Fc(epsilon)RI engagement, tyrosine phosphorylation of SLP-76, PLC-gamma1, and PLC-gamma2 and calcium mobilization were dramatically reduced. LAT-deficient BMMCs also exhibited profound defects in activation of MAPK, degranulation, and cytokine production after Fc(epsilon)RI cross-linking. These results show that LAT plays a critical role in Fc(epsilon)RI-mediated signaling in mast cells.

Adaptor Proteins, Signal Transducing↗

Profile of a comprehensive psychiatric emergency program in a New York City municipal hospital.

This paper profiles the services provided, and the patient population treated, in a busy inner city Comprehensive Psychiatric Emergency Program (CPEP) located in Elmhurst, Queens, New York City. For each CPEP component, including the emergency room, extended observation unit and crisis services two years of data are reviewed. A diagnostic profile of patients seen, description of services, patient referrals and dispositions are presented. The children and adolescents treated in the CPEP are described in more detail, focusing on the high frequency of violence to self or others seen in their presenting problems. The CPEP's role in providing comprehensive community based services is discussed.

Adolescent↗

Factor XIII Val34Leu polymorphism in primary intracerebral haemorrhage.

INTRODUCTION: Recently, the common Val34Leu polymorphism of the A-chain factor XIII gene, associated with high factor XIII activity, has been identified as a protective genetic factor against occlusive arterial and venous diseases. Moreover, this polymorphism has been suggested to be the first one to increase the risk of cerebral haemorrhage in a small number of Caucasian patients. The aim of our study was to investigate the role of this polymorphism in patients with primary intracerebral haemorrhage from a distinct population. MATERIAL AND METHODS: Patients with non-traumatic primary intracerebral haemorrhage (n=116), age-, race-, sex- and risk factor-matched controls (n=116), and individuals from the general population (n=465) were genotyped for the factor XIII Val34Leu polymorphism by polymerase chain reaction and allele specific restriction assay. The relationships of the Val/Leu genotype with distinct intracerebral haemorrhagic risk factors and with early mortality associated with the haemorrhagic episode were also analysed. RESULTS: No statistical difference in terms of prevalence was detected between patients (P=0.190) and controls (P=0.181). The frequency of the FXIII Leu34 allele was similar in the general population (P=0.191). CONCLUSION: The results suggest that the Leu 34 allele of the A-chain factor XIII gene has a minor role in the development of non-traumatic primary intracerebral haemorrhage. Moreover, the simultaneous presence of the Leu 34 allele with selected risk factors for this disease does not increase the risk of developing this disease.

Aged↗

Evaluation of pooled platelet concentrates using prestorage versus poststorage WBC reduction: impact of filtration timing.

BACKGROUND: Concern for the undesirable consequences of transfusing passenger WBCs is leading to the general use of WBC-reduced platelet concentrates (PCs). However, the impact of prestorage versus poststorage WBC reduction on the quality of platelet products has not been clearly defined. STUDY DESIGN AND METHODS: Pooled PCs were WBC reduced before or after 5-day storage, by use of a WBC filter (PXL-8, Pall Corp.). Samples from pools were taken on days 1 and 5, before and after filtration, and on Day 9 of storage and assessed for cell counts, biochemical values, expression of platelet glycoproteins, thrombin generation, and content of IL-6, IL-8, TNFalpha, transforming growth factor beta1 (TGFbeta1), and anaphylatoxins C3a and C4a. RESULTS: Filtration of fresh and 5-day-stored pooled PCs via a PXL-8 filter was similarly efficient, rendering pools with low WBC counts (<1 x 10(6) cells) and high platelet recovery (>95%). No major changes were found in the metabolic behavior or the expression of platelet GPIb, GPIIb/IIIa, CD62, and CD63 in PCs filtered before or after storage. Filtration, either before or after storage, increased by less than 5 percent the proportion of CD62+ platelets. Moreover, no changes were found in the concentration of prothrombin fragments 1 and 2 and thrombin-antithrombin complexes in the pooled PCs derived from the time of filtration. Finally, prestorage WBC reduction abrogated the accumulation of IL-6 and IL-8, but it did not prevent that of anaphylatoxins C3a and C4a nor of TGFbeta1. However, filtration through a PXL-8 filter significantly reduced (40-90%) the amount of IL-8, C3a, and C4a in the filtrate. CONCLUSIONS: The timing of PXL-8 filtration of PCs has little impact on the efficiency of WBC reduction and on platelet recovery, and it does not seem to affect the quality of platelets or the generation of thrombin in the PCs. As regards the goal of reducing the amount of bioactive products in PCs, it remains uncertain as to whether prestorage WBC reduction fully eliminates the need for poststorage filtration. Prestorage filtration leads to low levels of IL-6 and IL-8 in PCs, but it does not impair the poststorage content of TGFbeta1 or anaphyla-toxins. By contrast, poststorage PXL-8 filtration removes significant amounts of C3a and C4a, and thus it might provide clinical benefits beyond those of prestorage WBC reduction.

Blood Preservation↗

Antibody interactions with the capsule of Cryptococcus neoformans.

Monoclonal antibodies to the encapsulated fungus Cryptococcus neoformans produce different immunofluorescence (IF) patterns after binding to the polysaccharide capsule. To explore the relationship between the IF pattern and the location of antibody binding, two immunoglobulin M (IgM) monoclonal antibodies (MAbs) (12A1 and 13F1) that differ in protective efficacy and IF pattern and one protective IgG1 MAb (2H1) were studied by IF and electron microscopy (EM). Fixing C. neoformans cells in lung tissue for EM resulted in significantly better preservation of the capsule than fixing yeast cells in suspension. The localization of MAbs 12A1 and 13F1 by immunogold EM differed depending on whether the MAb was bound to cells in cut tissue sections embedded in plastic or to cells in solution. In cut tissue sections, MAbs 12A1 and 13F1 bound throughout the capsule, whereas in solution both MAbs bound near the capsule surface. To investigate whether antibody binding to the C. neoformans capsule affected the binding of other primary or secondary reagents, various combinations of MAbs 12A1, 13F1, and 2H1 were studied by direct and indirect IF. The IF pattern and location of binding for MAbs 12A1, 13F1, and 2H1 varied depending on the presence of other capsule-binding MAbs and the method of detection. The results show that (i) binding of MAbs to the C. neoformans polysaccharide capsule can modify the binding of subsequent primary or secondary antibodies; (ii) the IgM MAbs bind primarily to the outer capsule regions despite the occurrence of their epitopes throughout the capsule; and (iii) MAb 2H1 staining of newly formed buds is reduced, suggesting quantitative or qualitative differences in bud capsule.

Animals↗

Evaluation of leukocyte-depleted platelet concentrates obtained by in-line filtration.

BACKGROUND AND OBJECTIVES: The use of leukocyte-depleted platelet concentrates (PCs) is justified, yet questions remain regarding their properties. We have assessed the in vitro quality of WBC-reduced PCs obtained by using a new in-line filter. MATERIALS AND METHODS: Twenty blood units were randomized for standard component preparation, or for processing including in-line leukodepletion of platelet-rich plasma using an ATS(TM) PL Pall filter. The resultant PCs were compared during storage for several in vitro platelet quality parameters, content of cytokines and anaphylatoxins, and coagulation markers. RESULTS: In-line filtration of platelet-rich plasma through ATS PL was highly efficient rendering PCs with 99.93% less white blood cells (WBCs) than standard PCs. During storage for up to 9 days, leukocyte-depleted units displayed platelet content, biochemical parameters, and platelet surface expression of glycoproteins Ibalpha, IIb/IIa, CD62 and CD63, similar to those of standard units. However, in-line leukocyte-reduced PCs displayed no significant accumulation of IL-6 and IL-8 during storage in contrast to standard units. Moreover, while storage promoted complement activation with C3a and C4a liberation in both WBC-reduced PCs and standard units, the concentration of these anaphylatoxins after the 9-day storage period was higher in the former group. Finally, all units, standard and leukocyte-reduced, displayed a similar storage-promoted rise in TGF-beta(1), and a mild prolongation of activated partial thromboplastin and prothrombin times. CONCLUSION: In-line filtration during component preparation appears as an easy and effective procedure for obtaining prestorage leukocyte-depleted PCs. During subsequent blood bank storage, these WBC-reduced PCs display, in comparison with standard PCs, normal in vitro platelet properties, decreased accumulation of cytokines IL-6 and IL-8, and increased complement activation.

Anaphylatoxins↗

Renal changes induced by a cyclooxygenase-2 inhibitor during normal and low sodium intake.

Cyclooxygenase-2 (COX-2) has been identified in renal tissues under normal conditions, with its expression enhanced during sodium restriction. To evaluate the role of COX-2-derived metabolites in the regulation of renal function, we infused a selective inhibitor (nimesulide) in anesthetized dogs with normal or low sodium intake. The renal effects elicited by nimesulide and a non-isozyme-specific inhibitor (meclofenamate) were compared during normal sodium intake. In ex vivo assays, meclofenamate, but not nimesulide, prevented the platelet aggregation elicited by arachidonic acid. During normal sodium intake, nimesulide infusion (n=6) had no effects on arterial pressure or renal hemodynamics but did reduce urinary sodium excretion, urine flow rate, and fractional lithium excretion. In contrast, nimesulide administration increased arterial pressure and decreased renal blood flow, urine flow rate, and fractional lithium excretion during low sodium intake (n=6). COX-2 inhibition reduced urinary prostaglandin E(2) excretion in both groups but did not modify plasma renin activity in dogs with low (8.1+/-1.1 ng angiotensin I. mL(-1). h(-1)) or normal (1.8+/-0.4 ng angiotensin I. mL(-1). h(-1)) sodium intake. Meclofenamate infusion in dogs with normal sodium intake (n=8) induced a greater renal hemodynamic effect than nimesulide infusion. These results suggest that COX-2-derived metabolites (1) are involved in the regulation of sodium excretion in dogs with normal sodium intake, (2) play an important role in the regulation of renal hemodynamic and excretory function in dogs with low sodium intake, and (3) are not involved in the maintenance of the high renin levels during a long-term decrease in sodium intake.

Animals↗

A common polymorphism flanking the ATG initiator codon of GPIb alpha does not affect expression and is not a major risk factor for arterial thrombosis.

The platelet membrane glycoprotein (GP) Ib alpha plays a key role in the initial formation of thrombi. Polymorphisms (VNTR and HPA-2) in this receptor are associated with increased risk of coronary heart disease (CHD) and cerebral vascular disease (CVD). We investigated whether a recently described polymorphism (S/R), due to a single base change (T-->C) five nucleotides upstream the initiator codon of GPIb alpha, might influence the expression of the protein, and be implicated in the development of arterial thrombosis. One hundred and thirty nine healthy individuals provided blood samples for DNA analysis of platelet GPIb alpha polymorphisms, and for flow cytometric analysis of the surface expression of the receptor. A group of 20 S/R normal individuals and an identical number of S/S participants, age and sex matched, was investigated for the analysis of the density of various platelet receptors. The distribution of the S/R polymorphism was also analyzed in two case/control studies including 104 CVD patients, 101 CHD patients, and one control age, sex, and environmental risk factors matched for each case patient. Surface density of GPIb alpha showed no wide variations between individuals, was not influenced by the presence of S or R alleles, nor associated with the VNTR or HPA-2 polymorphisms. The prevalence of the S/R genotype among CVD and CHD patients was not distinct from that in the control groups. We conclude that the S/R polymorphism of GPIb alpha, flanking the initiator codon of the receptor, does not seem to be associated with surface levels of the protein, and is not an independent risk factor for arterial thrombosis.

Adult↗

The FXIII Val34Leu polymorphism in venous and arterial thromboembolism.

BACKGROUND AND OBJECTIVE: Several hereditary disorders affecting coagulation factors have been identified as prothrombotic risk factors. Recently, the common Val34Leu polymorphism of the A-chain factor XIII gene, associated with high factor XIII activity, has been identified as a protective genetic factor against occlusive arterial and venous diseases in British and Finnish populations. The aim of our study was to investigate the role of this polymorphism in arterial and venous thromboembolic disorders in a distinct population. DESIGN AND METHODS: We analyzed the prevalence of this polymorphism in three case/control studies of consecutive patients from the south of Spain diagnosed as having acute coronary syndromes (101), acute cerebrovascular events (104), and deep venous thrombosis (97). RESULTS: No significant differences were detected in the prevalence of genotypes or alleles between patients and controls. INTERPRETATION AND CONCLUSIONS: The Leu 34 allele does not play an important role in the development of thromboembolic episodes in the Spanish population.

Adult↗

Suppression of microphthalmia transcriptional activity by its association with protein kinase C-interacting protein 1 in mast cells.

Microphthalmia (mi) is a transcription factor that plays a major role in the regulation of growth and function in mast cells and melanocytes. Association of mi with other proteins is a critical step in the regulation of mi-mediated transcriptional activation. We found protein kinase C-interacting protein 1 (PKCI) specifically associated with mi in yeast two-hybrid screening. Immunoprecipitation of mi from quiescent rat basophilic leukemic cells or mouse melanocytes resulted in the specific co-immunoprecipitation of PKCI. This association was significantly reduced on engagement of the surface FcepsilonRI of mast cells or engagement of the Kit receptor on melanocytes. Hence, cell activation caused disengagement of mi from PKCI. Microphthalmia was previously shown to activate the mouse mast cell protease 6 (mMCP-6) promoter. Cotransfection of mi with PKCI in NIH 3T3 fibroblasts containing an mMCP-6 promoter-luciferase reporter demonstrated an up to 94% inhibition of mi-mediated transcriptional activation. PKCI by itself, although localized in the cytosol and nucleus of the cells, has no known physiological function and did not demonstrate transcriptional activity. Its ability to suppres mi transcriptional activity in the transient transfected fibroblast system suggests that it can function in vivo as a negative regulator of mi-induced transcriptional activation.

3T3 Cells↗

Requirement for a negative charge at threonine 60 of the FcRgamma for complete activation of Syk.

Aggregation of FcepsilonRI on mast cells results in the phosphorylation of the FcepsilonRIgamma chain on tyrosine and threonine residues within the immunoreceptor tyrosine-based activation motif. In the present study we sought to identify the site of threonine phosphorylation in FcepsilonRIgamma and investigate its functional importance. We found that threonine 60 was phosphorylated in vitro and in vivo. Expression of a mutated FcepsilonRIgamma (T60A), in either FcepsilonRIgamma-deficient or gamma-null mast cells, resulted in a delay of FcepsilonRI endocytosis, inhibition of TNF-alpha mRNA production, and inhibition of degranulation but did not affect FcepsilonRI-induced cell adhesion. Tyrosine phosphorylation of the T60A mutant gamma chain was normal, but Syk phosphorylation was dramatically reduced in these transfectants. This correlated with reduced co-immunoprecipitation of FcepsilonRIgamma with Syk. Substitution of an aspartic residue for threonine 60 of the FcepsilonRIgamma reconstituted complete activation of Syk and co-immunoprecipitation of FcepsilonRIgamma with Syk. We conclude that the negative charge provided by phosphorylation of threonine 60 of the FcepsilonRIgamma is required for the appropriate interaction and activation of Syk. This is a likely requirement for immunoreceptor tyrosine-based activation motifs involved in Syk activation.

Amino Acid Sequence↗

Tyrosine phosphorylation of Vav stimulates IL-6 production in mast cells by a Rac/c-Jun N-terminal kinase-dependent pathway.

This study investigates whether the guanine nucleotide exchange activity of Vav is linked to cytokine production in mast cells. Overexpression of Vav in the RBL-2H3 mast cell line resulted in the constitutive tyrosine phosphorylation and activation of Vav. We analyzed the functional effect of Vav overexpression on cytokine production. IL-2 and IL-6 mRNA levels were dramatically increased in Vav-overexpressing cells and correlated with increased NF-AT activity. Little or no effect was observed on the mRNA levels of IL-3, IL-4, GM-CSF, TNF-alpha, and TGF-beta. FcepsilonRI engagement did not further enhance IL-2 and IL-6 mRNA levels and only slightly enhanced NF-AT activity, but dramatically increased the mRNA levels of other tested cytokines. To understand the signal transduction required, we focused primarily on IL-6 induction by measuring mitogen-activated protein kinase activity and analyzing the effects of mutant or dominant negative forms of Vav, Rac1, and c-Jun N-terminal kinase-1 (JNK1). Vav overexpression resulted in the constitutive activation of JNK1 with little or no effect on p38 mitogen-activated protein kinase and ERK2. This was dependent on Vav-mediated activation of Rac1 as a Dbl domain-mutated Vav, inactive Rac N17, and inactive JNK1 down-regulated the Vav-induced JNK1 or IL-6 responses. Vav expression, but not expression of domain-mutated Vav, increased IL-6 secretion from nonimmortalized bone marrow-derived mast cells upon FcepsilonRI engagement. We conclude that Vav phosphorylation contributes to IL-6 induction in mast cells.

Adjuvants, Immunologic↗

Polyethylene glycol-mediated infection of non-permissive mammalian cells with semliki forest virus: application to signal transduction studies.

Semliki Forest Virus (SFV) vectors allow the subcloning of a gene of interest directly in the expression vector, thus avoiding the need to select and purify viral recombinants, making this viral expression system attractive over many others for mammalian protein expression. We now describe a novel and generally applicable method for infection of non-permissive mammalian cells with SFV, that greatly enhances the utility of this expression system. We demonstrate that the hygroscopic polymer poly (ethylene glycol), PEG, promotes the infectivity of cells by SFV under conditions that did not promote cell-cell fusion. We also found that the PEG-induced infection and expression of an exogenous protein (green fluorescent protein, GFP) did not elevate the basal tyrosine kinase activity, induce a stress-activated responses, or result in aberrant cell responses. Expression of GFP tagged-Vav, an activator of stress-activated protein kinase (SAPK/JNK), resulted in the expected induction of JNK activity and in the normal redistribution of Vav in response to engagement of the high affinity receptor for IgE (FcepsilonRI). Thus, our findings that PEG allows the infection of non-permissive cells by SFV makes this system extremely attractive for expression of proteins in mammalian cells, and studies on signal transduction and cellular localization in immune and non-immune cells.

3T3 Cells↗

Platelet cryopreservation using a reduced dimethyl sulfoxide concentration and second-messenger effectors as cryopreserving solution.

Cryopreservation of platelets is of great interest since it could extend to years the shelf life of therapeutic platelet concentrates (PCs) and facilitate stockpiling and inventory control in blood banking. We have compared the cryopreservation of PCs by the standard method using 6% Me(2)SO as cryoprotectant with the method of freezing employing low concentrations of Me(2)SO (2%) plus ThromboSol, a mixture of second-messenger effectors that protect platelets from cold damage. PC pools were treated either with 6% Me(2)SO or with ThromboSol and 2% Me(2)SO and then placed directly in a -80 degrees C freezer or in the vapor phase of a liquid nitrogen freezer (-120 degrees C). After storage for 1 week or for 3 months, samples were removed, thawed, and analyzed. Measurements included cell recovery, biochemical parameters, membrane glycoproteins (GPs), platelet aggregation, and binding of radiolabeled von Willebrand factor (vWF) and fibrinogen. PCs cryopreserved with ThromboSol and 2% Me(2)SO displayed a platelet recovery (90%) equivalent to those frozen with 6% Me(2)SO. Following either cryopreservation procedure, platelets showed increased surface expression of P-selectin and moderate loss of GP Ibalpha in comparison to fresh platelets. The aggregatory response to ristocetin and the binding of vWF were similar in platelets frozen by either procedure. Finally, both methods promoted comparable impairment of the reactivity of platelets to thrombin, aggregation and binding of fibrinogen and vWF, compared to that of fresh platelets. In summary, cryopreservation of PCs using reduced Me(2)SO concentration and ThromboSol yields platelets with in vitro functional characteristics equivalent to those of cells frozen with the conventional method using 6% Me(2)SO.

Blood Platelets↗